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Millimeter-Wave Waveguides is a monograph devoted to open
waveguides for millimeter wave applications. In the first chapters,
general waveguide theory is presented (with the emphasis on
millimeter wave applications). Next, the book systematically
describes the results of both theoretical and experimental studies
of rectangular dielectric rod waveguides with high dielectric
permittivities. Simple and accurate methods for propagation
constant calculations for isotropic as well as anisotropic
dielectric waveguides are described. Both analytical and numerical
approaches are covered. Different types of transitions have been
simulated in order to find optimal configurations as well as
optimal dimensions of dielectric waveguides for the frequency band
of 75-110 GHz. Simple and effective design is presented. The
experimental studies of dielectric waveguides show that Sapphire
waveguide can be utilized for this frequency band as a very
low-loss waveguide. Design of antennas with low return loss based
on dielectric waveguides is also described.
Millimeter-Wave Waveguides is a monograph devoted to open
waveguides for millimeter wave applications. In the first chapters,
general waveguide theory is presented (with the emphasis on
millimeter wave applications). Next, the book systematically
describes the results of both theoretical and experimental studies
of rectangular dielectric rod waveguides with high dielectric
permittivities. Simple and accurate methods for propagation
constant calculations for isotropic as well as anisotropic
dielectric waveguides are described. Both analytical and numerical
approaches are covered. Different types of transitions have been
simulated in order to find optimal configurations as well as
optimal dimensions of dielectric waveguides for the frequency band
of 75-110 GHz. Simple and effective design is presented. The
experimental studies of dielectric waveguides show that Sapphire
waveguide can be utilized for this frequency band as a very
low-loss waveguide. Design of antennas with low return loss based
on dielectric waveguides is also described.
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